Literature DB >> 22196016

Characterization of Zn(II)-responsive ribosomal proteins YkgM and L31 in E. coli.

M Patrick Hensley1, Thusitha S Gunasekera, J Allen Easton, Tara K Sigdel, Stacy A Sugarbaker, Lindsey Klingbeil, Robert M Breece, David L Tierney, Michael W Crowder.   

Abstract

RT-PCR and DNA microarrays were used to probe for Zn(II)-responsive genes in E. coli cells that were made Zn(II) deficient. Microarray data revealed 114 genes were significantly up-regulated and 146 genes were significantly down-regulated in Zn(II) deficient conditions. The three most up-regulated genes were (1) znuA, which encodes for a periplasmic protein known to be involved with Zn(II) import, (2) yodA, which encodes for a periplasmic protein with unknown function, and (3) ykgM, which encodes for a ribosomal protein that is thought to be a paralog of ribosomal protein L31. YodA was over-expressed and purified as a maltose binding protein (MBP) fusion protein and shown to tightly bind 4 equivalents of Zn(II). Metal analyses showed that MBP-YkgM does not bind Zn(II). On the other hand, MBP-L31 tightly binds 1 equivalent of Zn(II). EXAFS studies on MBP-L31 suggest a ligand field of 1 histidine, 1 cysteine, and 2 additional N/O scatterers. Site-directed mutagenesis studies suggest that Cys16 coordinates Zn(II) in MBP-L31 and that the other three cysteines do not bind metal. These results are discussed in light of Zn(II) starvation model that has been postulated for B. subtilis.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 22196016      PMCID: PMC3325339          DOI: 10.1016/j.jinorgbio.2011.11.022

Source DB:  PubMed          Journal:  J Inorg Biochem        ISSN: 0162-0134            Impact factor:   4.155


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